Photosynthetic assimilation of 14C into amino acids in potato (Solanumtuberosum) and asparagine in the tubers
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[1] N. Muttucumaru,et al. Effects of Nitrogen and Sulfur Fertilization on Free Amino Acids, Sugars, and Acrylamide-Forming Potential in Potato , 2013, Journal of agricultural and food chemistry.
[2] S. Powers,et al. Acrylamide concentrations in potato crisps in Europe from 2002 to 2011 , 2013, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment.
[3] S. Powers,et al. Effects of variety and nutrient availability on the acrylamide-forming potential of rye grain , 2013, Journal of cereal science.
[4] N. Muttucumaru,et al. Concentrations of free amino acids and sugars in nine potato varieties: effects of storage and relationship with acrylamide formation. , 2012, Journal of agricultural and food chemistry.
[5] C. Rommens,et al. Tuber-specific silencing of asparagine synthetase-1 reduces the acrylamide-forming potential of potatoes grown in the field without affecting tuber shape and yield. , 2012, Plant biotechnology journal.
[6] Stefania De Pascale,et al. Organic vs. traditional potato powder , 2012 .
[7] T. Setter,et al. Response of potato dry matter assimilation and partitioning to elevated CO2 at various stages of tuber initiation and growth , 2012 .
[8] N. Muttucumaru,et al. The acrylamide problem: a plant and agronomic science issue. , 2012, Journal of experimental botany.
[9] N. Muttucumaru,et al. Overexpression of GCN2-type protein kinase in wheat has profound effects on free amino acid concentration and gene expression. , 2012, Plant biotechnology journal.
[10] N. Muttucumaru,et al. Sugars in crop plants , 2011 .
[11] J. McNicol,et al. Variation in acrylamide producing potential in potato: Segregation of the trait in a breeding population , 2010 .
[12] Andrew M. Taylor,et al. Controlling maillard pathways to generate flavors , 2010 .
[13] Nigel G Halford,et al. The effects of storage on the formation of aroma and acrylamide in heated potato , 2010 .
[14] P. Shewry,et al. Effects of genotype and environment on free amino acid levels in wheat grain: implications for acrylamide formation during processing. , 2009, Journal of agricultural and food chemistry.
[15] C. Rommens,et al. Low-acrylamide French fries and potato chips , 2008, Plant biotechnology journal.
[16] N. Muttucumaru,et al. Reducing acrylamide precursors in raw materials derived from wheat and potato. , 2008, Journal of agricultural and food chemistry.
[17] Gary A Reineccius,et al. Flavour-Isolation Techniques , 2007 .
[18] R. Azevedo,et al. Nitrogen use efficiency. 2. Amino acid metabolism , 2007 .
[19] B. Forde,et al. Glutamate in plants: metabolism, regulation, and signalling. , 2007, Journal of experimental botany.
[20] N. Muttucumaru,et al. Changes in free amino acids and sugars in potatoes due to sulfate fertilization and the effect on acrylamide formation. , 2007, Journal of agricultural and food chemistry.
[21] N. Skovgaard. Safety evaluation of certain contaminants in food , 2007 .
[22] P. Schieberle,et al. Influence of sulfur fertilization on the amounts of free amino acids in wheat. correlation with baking properties as well as with 3-aminopropionamide and acrylamide generation during baking. , 2007, Journal of agricultural and food chemistry.
[23] P. Shewry,et al. Asparagine in plants , 2007 .
[24] D. Mottram. The Maillard reaction: source of flavour in thermally processed foods , 2007 .
[25] P. Shewry,et al. Formation of high levels of acrylamide during the processing of flour derived from sulfate-deprived wheat. , 2006, Journal of agricultural and food chemistry.
[26] R. Verhé,et al. Influence of fertilization on acrylamide formation during frying of potatoes harvested in 2003. , 2006, Journal of agricultural and food chemistry.
[27] Joint Fao,et al. Safety evaluation of certain contaminants in food , 2006 .
[28] B. Lau,et al. Acrylamide in French fries: influence of free amino acids and sugars. , 2004, Journal of agricultural and food chemistry.
[29] J. .. Bassham. Mapping the carbon reduction cycle: a personal retrospective , 2004, Photosynthesis Research.
[30] A. Benson. Following the path of carbon in photosynthesis: a personal story , 2004, Photosynthesis Research.
[31] D. T. Canvin,et al. Changes in specific radioactivities of corn-leaf metabolites during photosynthesis in 14CO2 and 12CO2 at normal and low oxygen , 2004, Planta.
[32] D. T. Canvin,et al. Changes in specific radioactivity of sunflower leaf metabolites during photosynthesis in 14CO2 and 12CO2 at three concentrations of CO2 , 2004, Planta.
[33] F. Escher,et al. Potential of acrylamide formation, sugars, and free asparagine in potatoes: a comparison of cultivars and farming systems. , 2003, Journal of agricultural and food chemistry.
[34] M. Friedman. Chemistry, biochemistry, and safety of acrylamide. A review. , 2003, Journal of agricultural and food chemistry.
[35] D. Zyzak,et al. Acrylamide formation mechanism in heated foods. , 2003, Journal of agricultural and food chemistry.
[36] G. Coruzzi,et al. Overexpression of the ASN1 Gene Enhances Nitrogen Status in Seeds of Arabidopsis1 , 2003, Plant Physiology.
[37] Martin Parry,et al. Markers and signals associated with nitrogen assimilation in higher plants. , 2003, Journal of experimental botany.
[38] B. Wedzicha,et al. Food chemistry: Acrylamide is formed in the Maillard reaction , 2002, Nature.
[39] A. Karley,et al. Amino acid composition and nutritional quality of potato leaf phloem sap for aphids. , 2002, The Journal of experimental biology.
[40] Eden Tareke,et al. Analysis of acrylamide, a carcinogen formed in heated foodstuffs. , 2002, Journal of agricultural and food chemistry.
[41] K. Fischer,et al. Intracellular And Intercellular Transport Of Nitrogen And Carbon , 2002 .
[42] M. Oruña‐Concha,et al. Comparison of volatile compounds isolated from the skin and flesh of four potato cultivars after baking. , 2001, Journal of agricultural and food chemistry.
[43] K. Oparka,et al. Sieve Elements and Companion Cells—Traffic Control Centers of the Phloem , 1999, Plant Cell.
[44] C. Cimpoiu,et al. Separation, identification and quantitative determination of free amino acids from plant extracts. , 1998, Journal of pharmaceutical and biomedical analysis.
[45] W. Eppendorfer,et al. Free and Total Amino Acid Composition of Edible Parts of Beans, Kale, Spinach, Cauliflower and Potatoes as Influenced by Nitrogen Fertilisation and Phosphorus and Potassium Deficiency , 1996 .
[46] L. A. Mackie-Dawson,et al. Nitrogen Partitioning Within the Potato (Solarium tuberosum L) Plant in Relation to Nitrogen Supply , 1989 .
[47] K. Oparka,et al. Translocation of assimilates within and between potato stems , 1985 .
[48] C. Sybesma,et al. Advances in Photosynthesis Research , 1984, Advances in Agricultural Biotechnology.
[49] A. Keys,et al. The Flux of Carbon through the Glycolate Pathway during Photosynthesis by Wheat Leaves , 1977 .
[50] J. Moorby. The Influence of Carbohydrate and Mineral Nutrient Supply on the Growth of Potato Tubers , 1968 .
[51] C. Stocking,et al. Effect of Light on the Incorporation of Serine into the Carbohydrates of Chloroplasts and Nonchloroplast Fractions of Tobacco Leaves. , 1965, Plant physiology.
[52] H. K. Porter,et al. Preparation of Radioactive Starch, Glucose and Fructose from C14O2 , 1952 .